| 查看: 7200 | 回复: 214 | |||
| 当前只显示满足指定条件的回帖,点击这里查看本话题的所有回帖 | |||
[交流]
PhD studentship 2017-Univeristy of Bordeaux (Deadline: Feb 24th 2017)
|
|||
|
大家再次新年好! 与往年一样,今年法国波尔多大学的CSC公派又开始了,再次受之前朋友委托,帮转发以下2017年的PhD招牌广告 (Deadline: Feb 24th 2017,但是还是尽早联系为好,别赶在最后一天),如果感兴趣的,请从速;希望有志留法的朋友们能积极申请,波尔多不会让你们失望,:-) 这个是法国与csc的公派专项,每年icmcb都能拿到几个名额,所以只需要直接联系老板,然后走下csc的官方程序即可。(有些信息也可以查阅我之前四年的帖子:https://muchong.com/bbs/viewthread.php?tid=9919069; https://muchong.com/bbs/viewthread.php?tid=6898912 和 https://muchong.com/bbs/viewthread.php?tid=5513969; https://muchong.com/bbs/viewthread.php?tid=8383308) 具体申请或者咨询,请直接联系 Prof. Corine MATHONIERE: corine.mathoniere@icmcb.cnrs.fr, Prof Graziella GOGLIO +33 5 40 00 63 34 graziella.goglio@u-bordeaux.fr Dr Catherine ELISSALDE +33 5 40 00 26 96 catherine.elissalde@icmcb.cnrs.fr 建议附上你的CV, brief summary of you education background, research experience, reserach interest, motivation letter, list of publication, list of referrences with detailed contact information, proof of good level of French or English language proficiency 以及其他你觉得有用的信息。截至日期Deadline: Feb 24th 2017;再次建议大家越早联系越好。 非学术问题,可以发我邮件liujizgd@yahoo.com或者站内信,我尽我所能回复你们。 以下是research proposal,大家可以通过这些了解下具体的课题方向 Hydrothermal Sintering : an innovative low temperature sintering process for the densification of ceramics The mastery of sintering processes is a key for the development of new, high performance ceramics. Currently most of advanced ceramic materials are fabricated from powders and sintered above 1000°C to reach at least 95% of their theoretical densities. The reduction of surface free energy, which is a driving force for sintering, might be promoted either by applying pressure or by enhancing diffusional processes using fast heating routes. Thus, intense international research has led to the development of numerous sintering techniques such as two-step, flash, high pressure, spark plasma, microwave sinterings….However the high temperatures required by these processes create several technological barriers: (i) advanced materials need to be produced by energy- and cost-efficient processes to ensure the feasibility of industrial scalability, (ii) the use of initial nanoparticles leads to reduced sintering temperatures, however the competition between densification, coarsening processes and agglomeration often yields microstructures with overly coarse grains, which is detrimental to densification, (iii) materials that are metastable or that decompose at low temperature are difficult to sinter with such processes and (iv) co-sintering of multimaterials is hindered by differences in thermal stability, the rate and the onset temperature of shrinkage, and the physical and/or chemical compatibilities between the components. For these reasons, there is an indisputable interest to develop low temperature (below 500°C), efficient sintering process (> 95% of compactness). Hydrothermal sintering is a powerful technology that surmounts the aforementioned barriers. This process, also called Hydrothermal Hot Pressing, was first developed by N. Yamasaki in the early 90’s. Here, a powder with water is externally and mechanically compressed in an autoclave, under hydrothermal conditions (T < 350°C; P < 200 MPa) over short time periods (from a few minutes to a few hours). Here, water acts as a solvent and mass transport media, and certainly enhances creep at the solid/solid interface to promote densification activated by dissolution/precipitation phenomena at the solid/liquid interface. Thus this process promotes surface chemistry phenomena in a hydrothermal solvent, as diffusion processes in the solid phase are unexpected at such low temperatures. For such reasons, hydrothermal sintering offers relevant and affordable solutions to overcome standard technological limitations. It might be suitable to densify metastable materials, materials with mild temperature decomposition, porous ceramics, nanomaterials without coarsening or to bond different materials. In June 2016, C. Randall el al. from Pennsylvania State University have reported impressive sintering results (95% of compactness reached on a large panel of ceramics and composites then evidencing device fabrication) with a process called the “Cold Sintering Process” based on hydrothermal sintering. This unambiguously corroborates the impressive potential of hydrothermal sintering. Two apparatuses were designed in 2012 within the ICMCB (350°C, 350 MPa) and optimized for the densification of (nano)materials). Many experimental results have been collected on silica nanoparticles sintering (Fig.1) and technological limitations have been overcome. We plan to sinter model nanoparticle systems either crystallized or amorphous (size range : below 100 nm – hundreds of nm). Our objective is to propose a mechanistic scenario on the basis of rationalized experimental results. Selected materials will be simple oxides to favor congruent dissolution. We will check the influence of all experimental parameters: water amount, pressure, temperature, holding time, pH, co-solvent, nanoparticle shape and size. Starting nanoparticles will be either commercial products or home made materials, depending on the selected oxide. Ceramics will be characterized by porosimetry intrusion, BET experiments, He Pycnometry, XRD, TGA, electronic microscopy (HRTEM and HRSEM), micro- and macro-hardness, and compression measurements to evaluate mechanical strength. Candidate’s eligibility • Candidates must be citizens and permanent residents of the People’s Republic of China at the time of application • Candidates must not be currently working abroad • Successful candidates must return to China upon completion of the studies and/or research • Candidates must have a good level of English (or French) language proficiency • Candidates should specify in their application that they are applying for the UB/CSC joint scholarship scheme • Candidates can only apply for one subject • Candidates from Hong-Kong are not eligible Process • Candidates send the completed application form with all the requested documents by February 24th 2017 to the PhD project supervisor at UB. • UB will evaluate the student files, academic performance and English language proficiency of the candidates. Interviews will be conducted by the PhD supervisors via telephone or via videoconference. • By March 16th 2017 UB will provide CSC and each qualified candidate with a copy of the admission letter. • By the beginning of April 2017, after receiving the admission letter from the University of Bordeaux, candidates must apply to the CSC by completing an application for funding. Forms are available online at https://apply.csc.edu.cn through CSC’s application agencies. • CSC will evaluate the candidates according to CSC requirements and priorities. The CSC Council will subsequently provide UB with a final list of scholarship recipients and inform the successful candidates before the end of May 2017. 相关文件请大家从下载 https://pan.baidu.com/s/1bpvKb1P |
» 本帖附件资源列表
-
欢迎监督和反馈:小木虫仅提供交流平台,不对该内容负责。
本内容由用户自主发布,如果其内容涉及到知识产权问题,其责任在于用户本人,如对版权有异议,请联系邮箱:xiaomuchong@tal.com - 附件 1 : CSC_2016_goglio-elissalde.pdf
- 附件 2 : UB_CSC_Application_Form_2017.docx
2017-01-27 20:42:37, 518.27 K
2017-01-27 20:42:38, 66.24 K
» 猜你喜欢
现代”学阀”该如何界定
已经有12人回复
国社科系统bug了,是不是要放榜了?
已经有10人回复
课题组招2027级博士 上海工程技术大学 激光智能制造方向
已经有4人回复
上海工程技术大学 激光智能制造课题组 2027级博士研究生招生
已经有3人回复
上海工程技术大学激光智能制造课题组|2027级博士研究生招生公告
已经有11人回复
我的奶奶
已经有3人回复
» 本主题相关价值贴推荐,对您同样有帮助:
» 抢金币啦!回帖就可以得到:
2027年航天航空、材料与人工智能国际会议(AMAI 2027)
+1/964
2027年电气工程、自动化与应用工程国际会议(EEAE 2027)
+1/945
2027年生物医学、农业与可持续发展国际会议(BASD 2027)
+1/887
大连理工大学大连市复杂工业场景具身智能重点实验室科研助理招聘启事
+2/164
大连理工大学控制科学与工程学院欧勇盛教授课题组2026年科研助理招聘启事
+2/164
澳门大学孙鹏展博士课题组招收全奖博士研究生1名
+2/86
韩国全北国立大学禽病研究所博士研究生招生简章
+2/54
哈工大(深圳)何自开团队诚招2027级化学工程与技术专业博士生
+1/42
西北民族大学数学与计算机科学学院招聘数学和计算机专业的博士
+1/39
求助邢其毅第四版基础有机化学PDF版
+1/32
哈工大深圳徐小川课题组招聘博士后
+1/30
加拿大UBC博士/博士后招聘|人工智能 × 电池
+1/16
国家级大人才团队,欢迎硕博连读推免生2名!化学、材料、石油工程:油田化学
+1/15
【推免招生】招收材料、化工、环境、冶金类推免生
+1/9
加拿大UBC博士后招聘|人工智能 × 电池
+1/7
北京科技大学2027级博士研究生招生|流体力学与渗流力学方向
+1/5
【征稿】Springer Nature热电专题 Discover Materials / Discover Chemistry
+1/4
中国科大化学与材料科学学院/苏州高研院刘东课题组诚聘催化方向博士后
+1/3
大湾区大学姚瑶课题组2027届博士生招生 (与中山大学联合培养)
+1/2
一转眼,人生已是中年
+1/1
49楼2017-01-28 01:15:20
8楼2017-01-27 21:00:17
简单回复
2017-01-27 20:45
回复
liujizgd(金币+1): 谢谢参与
好 发自小木虫IOS客户端
爱喝绿豆汤4楼
2017-01-27 20:47
回复
nbjiuxu5楼
2017-01-27 20:48
回复
mengcui6楼
2017-01-27 20:55
回复
liujizgd(金币+1): 谢谢参与
顶 发自小木虫Android客户端
wdxmu7楼
2017-01-27 20:59
回复
吸血人狼城9楼
2017-01-27 21:02
回复
吸血人狼城10楼
2017-01-27 21:02
回复
LifePursuit11楼
2017-01-27 21:10
回复
liujizgd(金币+1): 谢谢参与
一 发自小木虫IOS客户端
钰v荏苒如初12楼
2017-01-27 21:14
回复
蝶舞浅夏101714楼
2017-01-27 21:23
回复










回复此楼